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在东美国树种混合组成下土壤真菌分类群的优先关联。

Preferential associations of soil fungal taxa under mixed compositions of eastern American tree species.

机构信息

Department of Biological Sciences, Fordham University, Bronx, NY 10458, United States.

Louis Calder Center - Biological Field Station, Fordham University, Armonk, NY 10504, United States.

出版信息

FEMS Microbiol Ecol. 2022 May 23;98(6). doi: 10.1093/femsec/fiac056.

Abstract

Soil fungi are vital to forest ecosystem function, in part through their role mediating tree responses to environmental factors, as well as directly through effects on resource cycling. While the distribution of soil fungi can vary with abiotic factors, plant species identity is also known to affect community composition. However, the particular influence that a plant will have on its soil microbiota remains difficult to predict. Here, we paired amplicon sequencing and enzymatic assays to assess soil fungal composition and function under three tree species, Quercus rubra, Betula nigra, and Acer rubrum, planted individually and in all combinations in a greenhouse. We observed that fungal communities differed between each of the individual planted trees, suggesting at least some fungal taxa may associate preferentially with these tree species. Additionally, fungal community composition under mixed-tree plantings broadly differed from the individual planted trees, suggesting mixing of these distinct soil fungal communities. The data also suggest that there were larger enzymatic activities in the individual plantings as compared to all mixed-tree plantings which may be due to variations in fungal community composition. This study provides further evidence of the importance of tree identity on soil microbiota and functional changes to forest soils.

摘要

土壤真菌对森林生态系统功能至关重要,部分原因是它们在介导树木对环境因素的响应方面发挥作用,以及直接通过对资源循环的影响发挥作用。虽然土壤真菌的分布可能随非生物因素而变化,但已知植物物种的身份也会影响群落组成。然而,一种植物对其土壤微生物群的具体影响仍然难以预测。在这里,我们将扩增子测序和酶测定相结合,在温室中单独和组合种植三种树木(红栎、黑桦和红枫)的情况下,评估土壤真菌的组成和功能。我们观察到,单独种植的每棵树之间的真菌群落都存在差异,这表明至少有一些真菌类群可能与这些树种有偏好性的关联。此外,混种种植下的真菌群落组成与单独种植的树木有很大不同,这表明这些不同的土壤真菌群落存在混合。数据还表明,与所有混种种植相比,个体种植的酶活性更大,这可能是由于真菌群落组成的变化。这项研究进一步证明了树种身份对土壤微生物群和森林土壤功能变化的重要性。

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